In this paper we present the research results on dielectric properties based on Rare earth Neodymium Zinc Titanites (NZT). These results show that we have a stable perovskite structure and the other structure search suggest that the monoclinic crystal structure could be proposed for NZT. Modelling and simulation were used in this research to define the atomic position and crystal structure of NZT. The compositions have very specific dielectric properties which could useful in microwave telecommunications. It is very important to reduce the size, weight and microelectronic devices coast for future applications. So, the new miniaturization, better packaging and higher level of integrations, by using multi-layer processes and advanced intercon...
Ceramics grain structure is difficult to describe by using traditional analytical methods based on E...
Zn2SiO4 ceramics with nano-sized TiO2 addition (ZST) were synthesized by conventional solid state me...
Since that the scientific and technological efforts to further miniaturization, "better packaging" a...
Using the high -resolution x-ray diffraction (XRD) analysis, scanning electron microscopy (SEM), and...
Neodymium zinc titanate (NZT) is a very attractive perovskite due to its magnetic and dielectric pro...
The challenges in productivity of satellite mobile devices are growing rapidly to overcome the quest...
The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium ox...
Analysis of ceramic grain boundaries, esspecially for BaTiO3 , is also important for its dielectric ...
The microstructures properties predicting are based on their materials characteristics. In ceramic m...
The electronic ceramics applications based on ferroelectric and dielectric properties have enormous ...
We are witnesses of blowing-up of new technologies and materials that nowadays are being introduced ...
Considering the extremely growing exigency for further miniaturization and a higher level of packagi...
The intergrain ceramic structures are very complex and difficult to describe by using traditional an...
The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium ox...
Well known material with ferroelectric properties, BaTiO3-ceramics, have many advanced applications....
Ceramics grain structure is difficult to describe by using traditional analytical methods based on E...
Zn2SiO4 ceramics with nano-sized TiO2 addition (ZST) were synthesized by conventional solid state me...
Since that the scientific and technological efforts to further miniaturization, "better packaging" a...
Using the high -resolution x-ray diffraction (XRD) analysis, scanning electron microscopy (SEM), and...
Neodymium zinc titanate (NZT) is a very attractive perovskite due to its magnetic and dielectric pro...
The challenges in productivity of satellite mobile devices are growing rapidly to overcome the quest...
The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium ox...
Analysis of ceramic grain boundaries, esspecially for BaTiO3 , is also important for its dielectric ...
The microstructures properties predicting are based on their materials characteristics. In ceramic m...
The electronic ceramics applications based on ferroelectric and dielectric properties have enormous ...
We are witnesses of blowing-up of new technologies and materials that nowadays are being introduced ...
Considering the extremely growing exigency for further miniaturization and a higher level of packagi...
The intergrain ceramic structures are very complex and difficult to describe by using traditional an...
The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium ox...
Well known material with ferroelectric properties, BaTiO3-ceramics, have many advanced applications....
Ceramics grain structure is difficult to describe by using traditional analytical methods based on E...
Zn2SiO4 ceramics with nano-sized TiO2 addition (ZST) were synthesized by conventional solid state me...
Since that the scientific and technological efforts to further miniaturization, "better packaging" a...